A six-element optical imaging lens uses specific surface curvatures and refractive power distribution to manage light paths.
A seven-lens optical imaging assembly distributes refractive power and surface shapes to achieve compact size.
A seven-element camera optical lens design corrects chromatic aberration while maintaining an ultra-thin profile for handheld devices.
Segmenting the optical path into four groups corrects spherical aberration while maintaining a 100-degree field of view.
Segmenting refractive power across five lens elements corrects aberrations while maintaining a large aperture for low-light image capture.
A display device uses a separation layer with voids to isolate light emitting units on a substrate.
A five-element lens system positions the principal point away from the image plane to control off-axis light incidence.
Segmenting the optical system into seven elements resolves the trade-off between compact total length and high imaging quality.
Corner rib removal interrupts vibration propagation between drive axes, suppressing abnormal mirror oscillation.
Polarizing beam splitters and dark light traps absorb stray light in see-through displays, resolving contrast issues without blocking environmental visibility.
Standoffs between projector housings and waveguides ensure precise optical alignment, resolving manufacturing precision versus device complexity trade-offs.
Liquid crystal molecules transition from horizontal to vertical alignment in light-emitting areas to prevent color mixing between sub-pixel areas.
A six-piece optical lens assembly uses aspheric surfaces and mixed refractive powers to reduce total length.
A six-lens camera optical lens design achieves ultra-thin miniaturization with corrected chromatic aberrations.
Segmented lens assemblies with aspheric surfaces and compound elements resolve chromatic aberration while maintaining compact device size.
A zoom lens uses segmented front, intermediate, and rear groups to achieve high zoom ratios while maintaining compact physical dimensions.
A bifocal optical lens distributes power across independent focal parts to support clear near and far vision in head-mounted displays.
Time-multiplexed coded aperture directs left and right eye images to different directions, resolving resolution loss from spatial multiplexing.
Optical system design uses positive lens placement and Abbe number control to correct chromatic aberration while reducing weight.